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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >A quantitative method to assess muscle tissue oxygenation in vivo by monitoring ~1H nuclear magnetic resonance myoglobin resonances
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A quantitative method to assess muscle tissue oxygenation in vivo by monitoring ~1H nuclear magnetic resonance myoglobin resonances

机译:通过监测〜1H核磁共振肌红蛋白共振来评估体内肌肉组织氧合的定量方法

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摘要

A nuclear magnetic resonance (NMR) method was implemented to assess in vivo oxygenation levels by a quantitative determination of the ~1H NMR myoglobin (Mb) resonances. The proximal His-F8 N_δH at 70-90 ppm and Val-E11 γCH_3 resonance at -2.8 ppm, reflecting deoxygenated (deoxy-Mb) and oxygenated (met-Mb) states, were alternately recorded. The method was developed in vitro choosing a couple of NMR sequences that could each maximize the signal-to-noise ratio (SNR) while avoiding baseline rolling and suppressing the water signal. Two quantitative calibration methods were implemented for deoxy- and met-Mb samples (0.1-1 mM), respectively. The respective limit of detection (LOD) and limit of quantification (LOQ) were 0.015 and 0.05 mM for met-Mb and 0.013 and 0.042 mM for deoxy-Mb. Sequences and calibration curves were employed in vivo in Arenicola marina to obtain, for the first time, an accurate measurement of oxy- and deoxy-Mb actual concentrations. In Arenicola, the peaks at approximately 87 and -2.7 ppm, reflecting the deoxy- and oxy-Mb states, respectively, were alternately recorded during increasing hypoxia. The deoxy-Mb concentrations were obtained from the calibration curve. The oxy-Mb concentrations were calculated from the calibration of met-Mb because it was proved that oxy- and met-Mb gave the same NMR molar response. From oxy- and deoxy-Mb concentrations, the intracellular oxygen partial pressure (P_iO_2) trend was determined.
机译:通过定量确定〜1H NMR肌红蛋白(Mb)共振,实施核磁共振(NMR)方法来评估体内氧合水平。交替记录70-90 ppm的近端His-F8N_δH和-2.8 ppm的Val-E11γCH_3共振,分别反映了脱氧(deoxy-Mb)和氧化(met-Mb)状态。该方法是在体外开发的,选择了两个NMR序列,每个序列均可最大化信噪比(SNR),同时避免基线滚动和抑制水信号。分别对脱氧和Meb-Mb样品(0.1-1 mM)实施了两种定量校准方法。对于met-Mb,检测限(LOD)和定量限(LOQ)分别为0.015和0.05 mM,对于脱氧Mb,分别为0.013和0.042 mM。序列和校准曲线在体内用于Arenicola marina,首次获得了对氧和脱氧Mb实际浓度的准确测量。在Arenicola中,在缺氧加剧期间交替记录了分别反映脱氧-和氧-Mb状态的大约87和-2.7 ppm的峰。从校准曲线获得脱氧-Mb浓度。氧-Mb浓度是通过对met-Mb的校准计算得出的,因为已证明oxy-和met-Mb给出了相同的NMR摩尔响应。从氧和脱氧Mb浓度,确定了细胞内氧分压(P_iO_2)趋势。

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